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X-ray absorption fine structure investigation of MCM-41 materials containing Pt and PtSn nanoparticles prepared via direct hydrothermal synthesis

机译:直接水热合成制备含Pt和PtSn纳米粒子的MCM-41材料的X射线吸收精细结构研究

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Pt-and PtSn-containing MCM-41 materials were prepared by direct introduction of metal precursors with fumed silica and cetyltrimethylammonium surfactant. The precursor of Pt, with or without Sn precursor, was introduced in the initial synthesis mixture by dissolving both Pt(NH_3)_4(NO_3) and K_2SnO_3. The highly ordered MCM-41 mesoporous structure of two samples was revealed by a four-peaked XRD patterns, sharp capillary condensation in nitrogen isotherms, and a high surface area. After reduction, the coordination number of Pt particles in the MCM-41 samples decreased from 8.7 to 6.4 with simultaneous incorporation of Sn. The nearest Pt-Pt distance is almost the same, 0.276 nm, in both samples. The whiteline intensity of X-ray absorption at the Pt L_Ⅲ edge was decreased to that of metal foil during the reduction. It is suggested from the coordination number of the first shell that Pt particles are generated in the MCM-41 mesoporous molecular sieves by direct introduction and that simultaneous addition of Sn leads to a decrease of particle size.
机译:含Pt和PtSn的MCM-41材料是通过将气相二氧化硅和十六烷基三甲基铵表面活性剂直接引入金属前驱体而制得的。通过溶解Pt(NH_3)_4(NO_3)和K_2SnO_3将具有或不具有Sn前驱体的Pt前驱体引入到初始合成混合物中。两个样品的高度有序的MCM-41介孔结构通过四峰XRD图,氮等温线中的尖锐毛细管凝结和高表面积显示出来。还原后,在同时掺入锡的情况下,MCM-41样品中Pt颗粒的配位数从8.7降低到6.4。在两个样品中,最接近的Pt-Pt距离几乎相同,为0.276 nm。在还原过程中,PtL_Ⅲ边缘的X射线吸收白线强度降低到金属箔的白线强度。从第一壳的配位数表明,通过直接引入在MCM-41中孔分子筛中产生了Pt颗粒,并且同时添加Sn导致粒径减小。

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